Publications

A. Peer-reviewed Publications

Mixed Ionic Electronic Conducting Materials:

  1. Xinfang Jin, Jie Wang, Long Jiang, Ralph E White, Kevin Huang. “A Finite Length Cylinder Model for Mixed Oxide-Ion and Electron Conducting Cathodes Suited for Intermediate-Temperature Solid Oxide Fuel Cells.” Journal of The Electrochemical Society, 163(6), F548-F563 (2016).
  2. Xinfang Jin, Ralph E White, Kevin Huang, “Simulating Charge Transport in Solid Oxide Mixed Ionic and Electronic Conductors: Nernst-Planck Theory vs Modified Fick’s Law” Journal of The Electrochemical Society, 163(13), A2702-A27193 (2016).
  3. Fei He, Xinfang Jin, Tingfang Tian, Hanping Ding, Robert Green and Xingjian Xue. “Determination of electrochemical kinetic property for mixed ionic electronic conductors from electrical conductivity relaxation measurements.” Journal of the Electrochemical Society, 162 (9) F951-F958 (2015).

Defect Chemistry:

  1. Xinfang Jin Tianrang Yang and Kevin Huang. ” Defect Structure, Thermodynamic and Transport Properties of SrCo0.9Nb0.1O2.5+δ: A Combined Experimental and Defect Chemistry Approach.” Solid State Ionics, accepted, 2018.
  2. Xinfang Jin, Jie Wang and Kevin Huang. “Defect chemistry and transport properties of SrCo1−xTaxO2.5+δ as a promising oxygen electrocatalyst for reversible solid oxide fuel cells.” Solid State Ionics, 309, 48-57 (2017).
  3. Jie Wang, Xinfang Jin, Kevin Huang, “A new defect chemistry model for Nb-doped SrCoO5+δ: The role of oxygen interstitials and delocalized-to-localized electron holes” Journal of Solid State Chemistry, 246, 97-106 (2017).
  4. T Yang, X Jin, K Huang, Transport properties of SrCo0. 9Nb0. 1O3-δ and SrCo0. 9Ta0. 1O3-δ mixed conductors determined by combined oxygen permeation measurement and phenomenological modeling, Journal of membrane science 568, 47-54, 2, 2018

ORR and OER, Reaction Kinetics:

  1. Mattick, V.F., Jin, R.E. White, and K. Huang, A Superoxide Involved Oxygen Reduction Reaction Mechanism on a Glassy Carbon Electrode in Caustic Media. Journal of The Electrochemical Society, 2020. 167(12): p. 124518.
  2. Mattick, V.F., Jin, T. Yang, R.E. White, and K. Huang, Unraveling Oxygen Electrocatalysis Mechanisms on a Thin-Film Oxygen-Deficient Perovskite La0. 6Sr0. 4CoO3− δ. ACS Applied Energy Materials, 2018. 1(8): p. 3937-3946.
  3. VF Mattick, X Jin, RE White, K Huang, A perovskite/noble-metal composite as a bifunctional oxygen electrocatalyst for alkaline electrochemical cells, Journal of Energy Storage 23, 537-543,2019
  4. VF Mattick, X Jin, RE White, K Huang, Understanding the role of carbon in alkaline oxygen electrocatalysis: A case study on La0. 6Sr0. 4CoO3-δ/Vulcan carbon composite electrocatalyst, International Journal of Hydrogen Energy 44 (5), 2760-2769, 3, 2019
  5. VF Mattick, X Jin, T Yang, RE White, K Huang, Unraveling Oxygen Electrocatalysis Mechanisms on a Thin-Film Oxygen-Deficient Perovskite La0.6Sr0.4CoO3−δ, ACS Applied Energy Materials 1 (8), 3937-3946, 5, 2018

Multiphysics/Reaction Kinetics SOFC/SOEC:

  1. Jin, X. and K. Huang, Precautions of Using Three-Electrode Configuration to Measure Electrode Overpotential in Solid Oxide Electrochemical Cells: Insights from Finite Element Modeling. Journal of The Electrochemical Society, 2020. 167(12): p. 124501.
  2. X Jin, S Singh, A Verma, B Ohara, A Ku, K Huang, The performance of syngas-fueled solid oxide fuel cell predicted by a Reduced Order Model (ROM): Pressurization and flow-pattern effects, Journal of Power Sources 404, 96-105, 2018
  3. X Jin, A Ku, A Verma, B Ohara, K Huang, S Singh, The Performance of Syngas-Fueled SOFCs Predicted by a Reduced Order Model (ROM): Temperature and Fuel Composition Effects, Journal of The Electrochemical Society 165 (10), F786-F798, 2018
  4. Xinfang Jin, Meng Guo, Ralph E. White and Kevin Huang. “Understanding Power Enhancement of SOFC by Built-in Chemical Iron Bed: A Computational Approach.” Journal of the Electrochemical Society, 164 (11), E3054-E3062 (2017).
  5. Cuijuan Zhang, Chengxiang Ji, Wensheng Wang, Doug Schmidt, Xinfang Jin, John P Lemmon, Kevin Huang, “A dynamic solid oxide fuel cell empowered by the built-in iron-bed solid fuel” Energy & Environmental Science, 9 (12), 3746-3753 (2016).
  6. Xinfang Jin, Kevin Huang. “Multiphysics modeling of solid-oxide iron–air redox battery: analysis and optimization of operation and performance parameters.” Science Bulletin, 1-10 (2016). [Invited cover article]
  7. Xinfang Jin, Xuan Zhao, Ralph E. White and Kevin Huang. “Computational Analysis of Performance Limiting Factors for the New Solid Oxide Iron-air Redox Battery Operated at 550 °C” Electrochimica Acta, 178, 190-198 (2015).
  8. Xinfang Jin, Xuan Zhao and Kevin Huang. “A High-fidelity Model for Novel Solid Oxide Iron-Air Redox Battery Part I: Bridging Mass Transport and Charge Transfer with Redox Cycle Kinetics.” Journal of Power Sources, 280, 195 (2015).
  9. Xinfang Jin, Xuan Zhao Ralph White and Kevin Huang. “Heat Balance in a Planar Solid Oxide Iron-Air Redox Battery: A Computational Analysis.” Journal of the Electrochemical Society, 2015. 162(8): F821-F833.
  10. Xinfang Jin, Xuan Zhao Ralph White and Kevin Huang. “Understanding the High-temperature Solid-oxide Iron-Air Redox Battery Operated with Oxygen Shuttle Mechanism: a Computational Study.” Journal of the Electrochemical Society, 2015. 162(8): A1476-A1484.
  11. Xinfang Jin and Xingjian Xue. “Mathematical modeling analysis of regenerative solid oxide fuel cells in switching mode conditions.” Journal of Power Sources 2010. 195(19): 6652-6658.

System level analysis:

  1. Jin, X., A. Ku, B. Ohara, K. Huang, and S. Singh, Performance analysis of a 550MWe solid oxide fuel cell and air turbine hybrid system powered by coal-derived syngas. Energy, 2021. 222: p. 119917.
  2. Xinfang Jin, Xuan Zhao, Farzana Yasmeen, Ralph White and Kevin Huang. “Energy Efficiency of an Intermediate-temperature Solid Oxide Iron-Air Redox Battery.” Journal of Energy Storage, 3, 1-9 (2015). [This paper is in the list of the most cited articles published since 2011.]
  3. Jie Fang, Xinfang Jin and Kevin Huang. “Life cycle analysis of a combined CO2 capture and conversion membrane reactor Journal of Membrane Science, 549, 142-150 (2018).

LIB, ROM:

  1. Ng, B., P.T. Coman, E. Faegh, X. Peng, S.G. Karakalos, Jin, W.E. Mustain, and R.E. White, Low-Temperature lithium plating/corrosion hazard in lithium-ion batteries: electrode rippling, variable states of charge, and thermal and nonthermal runaway. ACS Applied Energy Materials, 2020. 3(4): p. 3653-3664.
  2. Ng, B., X. Duan, F. Liu, E. Agar, R.E. White, W.E. Mustain, and Jin, Investigation of Transport and Kinetic Nonideality in Solid Li-Ion Electrodes through Deconvolution of Electrochemical Impedance Spectra. Journal of The Electrochemical Society, 2020. 167(2): p. 020523.
  3. Hui Pang, L.G., Longxing Wu, Xinfang Jin, An enhanced temperature‐dependent model and state‐of‐charge estimation for a Li‐Ion battery using extended Kalman filter. International Journal of Energy Research, 2020. 44(9): p. 7254-7267.
  4. Meng Guo, Xinfang Jin and Ralph White. ” An adaptive reduced-order-modeling approach for simulating real-time performances of Li-ion battery systems.” Journal of the Electrochemical Society, 164 (11), E3200-E3214 (2017).
  5. Meng Guo, Xinfang Jin and Ralph White. ” Nonlinear State-Variable Method (NSVM) for Li-Ion Batteries: Finite-Element Method and Control Mode.” Journal of the Electrochemical Society, 164 (11), E3200-E3214 (2017).
  6. Meng Guo, Xinfang Jin and Ralph White. “Nonlinear state-variable algorithm for solving physics-based Li-ion cell model with high-frequency inputs.” Journal of the Electrochemical Society, 164 (11), E3001-E3015 (2017).
  7. Nansheng Xu, Xianzhong Sun, Feifei Zhao, Xinfang Jin, Xiong Zhang, Kai Wang, Kevin Huang, Yanwei Ma, “The Role of Pre-Lithiation in Activated Carbon/Li4Ti 5O12 Asymmetric Capacitors” Electrochimica Acta, 236, 443-450 (2017).

Chemical-Mechanical Coupling:

  1. Xinfang Jin and Xingjian Xue. “Modeling of Chemical-Mechanical Couplings in Anode-Supported Solid Oxide Fuel Cells and Reliability Analysis.” RSC Adv., 2014. 4 (30). 15782–15796.
  2. Xinfang Jin and Xingjian Xue. “Micro Modeling Study of Cathode/Electrolyte Interfacial Stresses for Solid Oxide Fuel Cells” Journal of the Electrochemical Society 160(8): F815-F823.
  3. Xinfang Jin and Xingjian Xue. “Computational fluid dynamics analysis of solid oxide electrolysis cells with delaminations.” International Journal of Hydrogen Energy 35(14): 7321-7328.

Experimental, SOEC/SOFC:

  1. Z Yang, C Ma, N Wang, X Jin, C Jin, S Peng, Electrochemical reduction of CO2 in a symmetrical solid oxide electrolysis cell with La0. 4Sr0. 6Co0. 2Fe0. 7Nb0. 1O3-δ electrode, Journal of CO2 Utilization 33, 445-451,2019.
  2. Y Yang, T Yue, Y Wang, Z Yang, X Jin, Effects of morphology on electrocatalytic activity of CeO2 nanomaterials, Microchemical Journal 148, 42-50, 2019
  3. Z Yang, N Wang, C Ma, X Jin, Z Lei, X Xiong, S Peng, Co-electrolysis of H2O-CO2 in a solid oxide electrolysis cell with symmetrical La0. 4Sr0. 6Co0. 2Fe0. 7Nb0. 1O3− δ electrode, Journal of Electroanalytical Chemistry 836, 107-111, 2, 2019
  4. Jie Wang, Long Jiang, Xiaolei Xiong, Cuijuan Zhang, Xinfang Jin, Libin Lei, Kevin Huang. “A Broad Stability Investigation of Nb-Doped SrCoO2. 5+δ as a Reversible Oxygen Electrode for Intermediate-Temperature Solid Oxide Fuel Cells.” Journal of The Electrochemical Society, 163(8), F891-F898 (2016).
  5. Long Jiang, Jie Wang, Xiaolei Xiong, Xinfang Jin, Qiming Pei, Kevin Huang. “Thermal and Electrical Stability of Sr0. 9Y0. 1CoO2. 5+δ as a Promising Cathode for Intermediate-Temperature Solid Oxide Fuel Cells.” Journal of The Electrochemical Society, 163(5), F330-F335 (2016).

Experimental, Solar Cells/Redox Flow Batteries:

  1. Almakrami, H., Z. Wei, G. Lin, Jin, E. Agar, and F. Liu, An integrated solar cell with built-in energy storage capability. Electrochimica Acta, 2020. 349: p. 136368.
  2. Nourani, M., C.R. Dennison, Jin, F. Liu, and E. Agar, Elucidating Effects of Faradaic Imbalance on Vanadium Redox Flow Battery Performance: Experimental Characterization. Journal of The Electrochemical Society, 2019. 166(15): p. A3844.
  3. Wei, Z., C. Hsu, H. Almakrami, G. Lin, J. Hu, Jin, E. Agar, and F. Liu, Ultra-high-aspect-ratio vertically aligned 2D MoS2-1D TiO2 nanobelt heterostructured forests for enhanced photoelectrochemical performance. Electrochimica Acta, 2019. 316: p. 173-180.
  4. Wei, Z., A. Salehi, G. Lin, J. Hu, X. Jin, E. Agar, and F. Liu, Probing Li-ion concentration in an operating lithium ion battery using in situ Raman spectroscopy. Journal of Power Sources, 2020. 449: p. 227361.

CO2 capture membrane:

  1. Li, X., K. Huang, and Jin, Mathematical Modeling of High-Temperature Multiphase Solid/Molten Carbonate Membranes for CO2 Capture. Journal of the Electrochemical Society, 2020. 167(16): p. 164512.

B. Conference Papers &Presentations

  1. Jin, X. and K. Huang. Mechanistic Understanding of OER Degradation of SOEC through Computational Modeling. in ECS Meeting Abstracts. 2020. IOP Publishing.
  2. Jin, X., X. Li, and K. Huang. Modeling of High-Temperature Multiphase Solid/Molten Carbonate Membranes for CO2 Capture. in ECS Meeting Abstracts. 2020. IOP Publishing.
  3. Jin, X. Investigation of Thermodynamic Nonideality of Solid Li-ion Electrodes Using Concentrated Solution Theory. in ECS Meeting Abstracts. 2019. IOP Publishing.
  4. Xinfang Jin, Viki Mattick and Kevin Huang. “Oxygen Reduction Reaction of Perovskite Electrocatalysts in Alkaline Media at a Rotating Disk Electrode: Mechanism Analysis.” ECS Meeting Abstracts, May 13, 2018.
  5. Xinfang Jin, Ralph White. “Simulating Charge Transport in Solid Oxide Mixed Ionic and Electronic Conductors” 2016 NASA Aerospace Battery Workshop. Nov. 17 2016 10:00AM.
  6. Xinfang Jin, Meng Guo, Ralph E. White and Kevin Huang. ” Computational Analysis of Dynamic Tubular SOFC with a Built-in Chemical Iron Bed.” ECS Transaction, 78(1), 2683-2698 (2017).
  7. Xinfang Jin, Xuan Zhao, Ralph White and Kevin Huang. “Analysis of Performance Limiting Factors in Solid-Oxide Iron-Air Redox Battery Operated with Different Redox Couples.” ECS Transactions, 68(1), 251-268 (2015).
  8. Xinfang Jin, Xuan Zhao and Kevin Huang. “A Computational Study of the Effects of Charging Parameters on the Performance and Reversibility of a New Type SOFC Storage Battery.” 2015 MRS Fall Meeting Proceedings, 1735 (2015).
  9. Xinfang Jin, Junxiang Shi and Xingjian Xue. “Micro Modeling Study of Cathode/Electrolyte Interfacial Stresses for Solid Oxide Fuel Cells” 222nd ECS Meeting, Honolulu, Hawaii. Fuel Cell Degradation. Oct 10 2012 8:00AM.
  10. Xinfang Jin, Li Wang, Shufeng Sun, Lige Tong. “SIMULATION ANALYSIS ON REGULATION METHODS FOR 99.9% OXYGEN PRODUCTION WITH AN METALLURGICAL ASU” 22nd International congress of refrigeration, Beijing, China, 2007.